US7755146B2

Formation of standard voltage threshold and low voltage threshold MOSFET devices

Summary by NHIP

Four-Well CMOS Threshold Control

The method forms four distinct wells in a substrate to define standard and low voltage threshold regions for both NMOS and PMOS transistors. Subsequent steps involve implanting P-type and N-type impurities into the substrate and doping polysilicon gate stacks with specific impurities based on the defined regions.

Claim Score by NHIP

Read claim 13, the broadest

Abstract

Wells are formed in a substrate where standard Vt and low Vt devices of both a first and second type are to be fabricated. Wells defining the locations of first type standard Vt devices are masked, and a first voltage threshold implant adjustment is performed within wells defining the second type standard Vt devices, and each of the first and second type low Vt devices. Wells that define the locations of second type standard Vt devices are masked, and a second voltage threshold implant adjustment is performed to the wells defining the first type standard Vt devices, and each of the first and second type low Vt devices. Doped polysilicon gate stacks are then formed over the wells. Performance characteristics and control of each device Vt is controlled by regulating at least one of the first and second voltage threshold implant adjustments, and the polysilicon gate stack doping.

US7755146B2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Expired 8 July 2022, 4.2 years ago.

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  5. Today

20 claims: 6 independent, 14 dependent

  1. 1
    A CMOS device having standard and low voltage threshold gates for both PMOS and NMOS transistors fabricated by the process comprising:forming a P-type well in a substrate defining a standard voltage threshold NMOS region;forming an N-type well in said substrate defining a standard voltage threshold PMOS region;forming a P-type well in said substrate defining a low voltage threshold NMOS region;forming an N-type well in said substrate defining a low voltage threshold PMOS region;implanting a P-type impurity into said substrate;implanting an N-type impurity into said substrate;and forming a polysilicon gate stack over said substrate in the regions of said substrate defining said standard voltage NMOS region, said standard voltage PMOS region, said low voltage NMOS region, and said low voltage PMOS region.
  2. 5
    A CMOS device fabricated by the process comprising:forming a first type well in a substrate defining a standard voltage threshold second type region;forming a second type well in said substrate defining a standard voltage threshold first type region;forming a first type well in said substrate defining a low voltage threshold second type region;forming a second type well in said substrate defining a low voltage threshold first type region;implanting a first type impurity into said substrate;implanting a second type impurity into said substrate;and forming a polysilicon gate stack over in the regions of said substrate defining said standard voltage second type region, said standard voltage first type region, said low voltage second type region, and said low voltage first type region.
  3. 10
    A CMOS device having standard and low voltage threshold gates for both PMOS and NMOS transistors fabricated by the process comprising:forming at least two N-type wells in a substrate;forming at least two P-type wells in said substrate;providing a first mask over said substrate overlying at least one of said N-type wells defining a standard voltage threshold PMOS region;performing an NMOS voltage threshold adjustment ion implantation;removing said first mask from said substrate;providing a second mask over said substrate overlying at least one of said P-type wells defining a standard voltage threshold NMOS region;performing a PMOS voltage threshold adjustment ion implantation;forming an NMOS transistor over each of said P-type wells;and forming a PMOS transistor over each of said N-type wells, wherein said NMOS transistors each comprise a heavily doped N-type polysilicon gate or said PMOS transistors each comprise a heavily doped P-type polysilicon gate.
  4. 13
    Broadest claimClaim Score 65, broad(NHIP)A dual gate CMOS device manufactured by the process comprising:forming a plurality of wells in a substrate;forming a plurality of polysilicon gate stacks over said plurality of wells;and forming at least four transistors including a standard voltage threshold NMOS transistor, a standard voltage threshold PMOS transistor, a low voltage threshold NMOS transistor, and a low voltage threshold PMOS transistor, each transistor formed over a select one of said wells, wherein a voltage threshold of a select one of said transistors is individually controllable.
  5. 15
    A CMOS device having standard and low voltage threshold gates for both PMOS and NMOS transistors fabricated by the process comprising:forming a P-type well in a substrate defining a standard voltage threshold NMOS region;forming an N-type well in said substrate defining a standard voltage threshold PMOS region;forming a P-type well in said substrate defining a low voltage threshold NMOS region;forming an N-type well in said substrate defining a low voltage threshold PMOS region;implanting a P-type impurity into said substrate;implanting an N-type impurity into said substrate;forming a polysilicon gate stack over in the regions of said substrate defining said standard voltage NMOS region, said standard voltage PMOS region, said low voltage NMOS region, and said low voltage PMOS region;doping said polysilicon gate stacks over said standard voltage NMOS region and said low voltage NMOS region with an N-type impurity;doping said polysilicon gate stacks over said standard voltage PMOS region and said low voltage PMOS region with a P-type impurity;and forming lightly doped drain regions about each of said gate stacks that are self-aligned with the gate stacks.
  6. 19
    A CMOS device having standard and low voltage threshold gates for both PMOS and NMOS transistors fabricated by the process comprising:forming a P-type well in a substrate defining a standard voltage threshold NMOS region;forming an N-type well in said substrate defining a standard voltage threshold PMOS region;forming a P-type well in said substrate defining a low voltage threshold NMOS region;forming an N-type well in said substrate defining a low voltage threshold PMOS region;forming isolation regions in said substrate after said formation of said P-type wells and said N-type wells;implanting a P-type impurity into said substrate;implanting an N-type impurity into said substrate;forming a polysilicon gate stack over in the regions of said substrate defining said standard voltage NMOS region, said standard voltage PMOS region, said low voltage NMOS region, and said low voltage PMOS region;doping said polysilicon gate stacks over said standard voltage NMOS region and said low voltage NMOS region with an N-type impurity;doping said polysilicon gate stacks over said standard voltage PMOS region and said low voltage PMOS region with a P-type impurity;and forming lightly doped drain regions about each of said gate stacks.